1 /******************************************************************************
2  *
3  *  Copyright 2002-2012 Broadcom Corporation
4  *
5  *  Licensed under the Apache License, Version 2.0 (the "License");
6  *  you may not use this file except in compliance with the License.
7  *  You may obtain a copy of the License at:
8  *
9  *  http://www.apache.org/licenses/LICENSE-2.0
10  *
11  *  Unless required by applicable law or agreed to in writing, software
12  *  distributed under the License is distributed on an "AS IS" BASIS,
13  *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14  *  See the License for the specific language governing permissions and
15  *  limitations under the License.
16  *
17  ******************************************************************************/
18 
19 /******************************************************************************
20  *
21  *  This file contains interfaces which are internal to AVDTP.
22  *
23  ******************************************************************************/
24 #ifndef AVDT_INT_H
25 #define AVDT_INT_H
26 
27 #include <unordered_map>
28 
29 #include "avdt_api.h"
30 #include "avdt_defs.h"
31 #include "avdtc_api.h"
32 #include "bt_common.h"
33 #include "btm_api.h"
34 #include "l2c_api.h"
35 #include "osi/include/alarm.h"
36 #include "osi/include/fixed_queue.h"
37 
38 #ifndef AVDT_DEBUG
39 #define AVDT_DEBUG FALSE
40 #endif
41 
42 /*****************************************************************************
43  * constants
44  ****************************************************************************/
45 
46 /* channel types */
47 enum {
48   AVDT_CHAN_SIG,   /* signaling channel */
49   AVDT_CHAN_MEDIA, /* media channel */
50   AVDT_CHAN_REPORT, /* reporting channel */
51   AVDT_CHAN_NUM_TYPES
52 };
53 
54 /* protocol service capabilities of this AVDTP implementation */
55 #define AVDT_PSC (AVDT_PSC_TRANS | AVDT_PSC_REPORT | AVDT_PSC_DELAY_RPT)
56 #define AVDT_LEG_PSC (AVDT_PSC_TRANS | AVDT_PSC_REPORT)
57 
58 /* initiator/acceptor signaling roles */
59 #define AVDT_CLOSE_ACP 0
60 #define AVDT_CLOSE_INT 1
61 #define AVDT_OPEN_ACP 2
62 #define AVDT_OPEN_INT 3
63 
64 /* states for avdt_scb_verify */
65 #define AVDT_VERIFY_OPEN 0
66 #define AVDT_VERIFY_STREAMING 1
67 #define AVDT_VERIFY_SUSPEND 2
68 #define AVDT_VERIFY_START 3
69 
70 /* to distinguish CCB events from SCB events */
71 #define AVDT_CCB_MKR 0x80
72 
73 /* offset where AVDTP signaling message content starts;
74  * use the size of a start header since it's the largest possible
75  * layout of signaling message in a buffer is:
76  *
77  * |  BT_HDR  | SCB handles | L2CAP + HCI header | AVDTP header | data ... |
78  *
79  * Note that we "hide" the scb handles at the top of the message buffer.
80 */
81 #define AVDT_MSG_OFFSET (L2CAP_MIN_OFFSET + AVDT_NUM_SEPS + AVDT_LEN_TYPE_START)
82 
83 /* scb transport channel connect timeout value (in milliseconds) */
84 #define AVDT_SCB_TC_CONN_TIMEOUT_MS (10 * 1000)
85 
86 /* scb transport channel disconnect timeout value (in milliseconds) */
87 #define AVDT_SCB_TC_DISC_TIMEOUT_MS (10 * 1000)
88 
89 /* maximum number of command retransmissions */
90 #ifndef AVDT_RET_MAX
91 #define AVDT_RET_MAX 1
92 #endif
93 
94 /* ccb state machine states */
95 enum {
96   AVDT_CCB_IDLE_ST,
97   AVDT_CCB_OPENING_ST,
98   AVDT_CCB_OPEN_ST,
99   AVDT_CCB_CLOSING_ST
100 };
101 
102 /* state machine action enumeration list */
103 enum : uint8_t {
104   AVDT_CCB_CHAN_OPEN,
105   AVDT_CCB_CHAN_CLOSE,
106   AVDT_CCB_CHK_CLOSE,
107   AVDT_CCB_HDL_DISCOVER_CMD,
108   AVDT_CCB_HDL_DISCOVER_RSP,
109   AVDT_CCB_HDL_GETCAP_CMD,
110   AVDT_CCB_HDL_GETCAP_RSP,
111   AVDT_CCB_HDL_START_CMD,
112   AVDT_CCB_HDL_START_RSP,
113   AVDT_CCB_HDL_SUSPEND_CMD,
114   AVDT_CCB_HDL_SUSPEND_RSP,
115   AVDT_CCB_SND_DISCOVER_CMD,
116   AVDT_CCB_SND_DISCOVER_RSP,
117   AVDT_CCB_SND_GETCAP_CMD,
118   AVDT_CCB_SND_GETCAP_RSP,
119   AVDT_CCB_SND_START_CMD,
120   AVDT_CCB_SND_START_RSP,
121   AVDT_CCB_SND_SUSPEND_CMD,
122   AVDT_CCB_SND_SUSPEND_RSP,
123   AVDT_CCB_CLEAR_CMDS,
124   AVDT_CCB_CMD_FAIL,
125   AVDT_CCB_FREE_CMD,
126   AVDT_CCB_CONG_STATE,
127   AVDT_CCB_RET_CMD,
128   AVDT_CCB_SND_CMD,
129   AVDT_CCB_SND_MSG,
130   AVDT_CCB_SET_RECONN,
131   AVDT_CCB_CLR_RECONN,
132   AVDT_CCB_CHK_RECONN,
133   AVDT_CCB_CHK_TIMER,
134   AVDT_CCB_SET_CONN,
135   AVDT_CCB_SET_DISCONN,
136   AVDT_CCB_DO_DISCONN,
137   AVDT_CCB_LL_CLOSED,
138   AVDT_CCB_LL_OPENED,
139   AVDT_CCB_DEALLOC,
140   AVDT_CCB_NUM_ACTIONS
141 };
142 
143 #define AVDT_CCB_IGNORE AVDT_CCB_NUM_ACTIONS
144 
145 /* ccb state machine events */
146 enum {
147   AVDT_CCB_API_DISCOVER_REQ_EVT,
148   AVDT_CCB_API_GETCAP_REQ_EVT,
149   AVDT_CCB_API_START_REQ_EVT,
150   AVDT_CCB_API_SUSPEND_REQ_EVT,
151   AVDT_CCB_API_DISCOVER_RSP_EVT,
152   AVDT_CCB_API_GETCAP_RSP_EVT,
153   AVDT_CCB_API_START_RSP_EVT,
154   AVDT_CCB_API_SUSPEND_RSP_EVT,
155   AVDT_CCB_API_CONNECT_REQ_EVT,
156   AVDT_CCB_API_DISCONNECT_REQ_EVT,
157   AVDT_CCB_MSG_DISCOVER_CMD_EVT,
158   AVDT_CCB_MSG_GETCAP_CMD_EVT,
159   AVDT_CCB_MSG_START_CMD_EVT,
160   AVDT_CCB_MSG_SUSPEND_CMD_EVT,
161   AVDT_CCB_MSG_DISCOVER_RSP_EVT,
162   AVDT_CCB_MSG_GETCAP_RSP_EVT,
163   AVDT_CCB_MSG_START_RSP_EVT,
164   AVDT_CCB_MSG_SUSPEND_RSP_EVT,
165   AVDT_CCB_RCVRSP_EVT,
166   AVDT_CCB_SENDMSG_EVT,
167   AVDT_CCB_RET_TOUT_EVT,
168   AVDT_CCB_RSP_TOUT_EVT,
169   AVDT_CCB_IDLE_TOUT_EVT,
170   AVDT_CCB_UL_OPEN_EVT,
171   AVDT_CCB_UL_CLOSE_EVT,
172   AVDT_CCB_LL_OPEN_EVT,
173   AVDT_CCB_LL_CLOSE_EVT,
174   AVDT_CCB_LL_CONG_EVT
175 };
176 
177 /* scb state machine states; these state values are private to this module so
178  * the scb state cannot be read or set by actions functions
179 */
180 enum {
181   AVDT_SCB_IDLE_ST,
182   AVDT_SCB_CONF_ST,
183   AVDT_SCB_OPENING_ST,
184   AVDT_SCB_OPEN_ST,
185   AVDT_SCB_STREAM_ST,
186   AVDT_SCB_CLOSING_ST
187 };
188 
189 /* state machine action enumeration list */
190 enum {
191   AVDT_SCB_HDL_ABORT_CMD,
192   AVDT_SCB_HDL_ABORT_RSP,
193   AVDT_SCB_HDL_CLOSE_CMD,
194   AVDT_SCB_HDL_CLOSE_RSP,
195   AVDT_SCB_HDL_GETCONFIG_CMD,
196   AVDT_SCB_HDL_GETCONFIG_RSP,
197   AVDT_SCB_HDL_OPEN_CMD,
198   AVDT_SCB_HDL_OPEN_REJ,
199   AVDT_SCB_HDL_OPEN_RSP,
200   AVDT_SCB_HDL_PKT,
201   AVDT_SCB_DROP_PKT,
202   AVDT_SCB_HDL_RECONFIG_CMD,
203   AVDT_SCB_HDL_RECONFIG_RSP,
204   AVDT_SCB_HDL_SECURITY_CMD,
205   AVDT_SCB_HDL_SECURITY_RSP,
206   AVDT_SCB_HDL_SETCONFIG_CMD,
207   AVDT_SCB_HDL_SETCONFIG_REJ,
208   AVDT_SCB_HDL_SETCONFIG_RSP,
209   AVDT_SCB_HDL_START_CMD,
210   AVDT_SCB_HDL_START_RSP,
211   AVDT_SCB_HDL_SUSPEND_CMD,
212   AVDT_SCB_HDL_SUSPEND_RSP,
213   AVDT_SCB_HDL_TC_CLOSE,
214   AVDT_SCB_HDL_TC_CLOSE_STO,
215   AVDT_SCB_HDL_TC_OPEN,
216   AVDT_SCB_HDL_TC_OPEN_STO,
217   AVDT_SCB_SND_DELAY_RPT_REQ,
218   AVDT_SCB_HDL_DELAY_RPT_CMD,
219   AVDT_SCB_HDL_DELAY_RPT_RSP,
220   AVDT_SCB_HDL_WRITE_REQ,
221   AVDT_SCB_SND_ABORT_REQ,
222   AVDT_SCB_SND_ABORT_RSP,
223   AVDT_SCB_SND_CLOSE_REQ,
224   AVDT_SCB_SND_STREAM_CLOSE,
225   AVDT_SCB_SND_CLOSE_RSP,
226   AVDT_SCB_SND_GETCONFIG_REQ,
227   AVDT_SCB_SND_GETCONFIG_RSP,
228   AVDT_SCB_SND_OPEN_REQ,
229   AVDT_SCB_SND_OPEN_RSP,
230   AVDT_SCB_SND_RECONFIG_REQ,
231   AVDT_SCB_SND_RECONFIG_RSP,
232   AVDT_SCB_SND_SECURITY_REQ,
233   AVDT_SCB_SND_SECURITY_RSP,
234   AVDT_SCB_SND_SETCONFIG_REQ,
235   AVDT_SCB_SND_SETCONFIG_REJ,
236   AVDT_SCB_SND_SETCONFIG_RSP,
237   AVDT_SCB_SND_SNK_DELAY_RPT_REQ,
238   AVDT_SCB_SND_TC_CLOSE,
239   AVDT_SCB_CB_ERR,
240   AVDT_SCB_CONG_STATE,
241   AVDT_SCB_REJ_STATE,
242   AVDT_SCB_REJ_IN_USE,
243   AVDT_SCB_REJ_NOT_IN_USE,
244   AVDT_SCB_SET_REMOVE,
245   AVDT_SCB_FREE_PKT,
246   AVDT_SCB_CLR_PKT,
247   AVDT_SCB_CHK_SND_PKT,
248   AVDT_SCB_TC_TIMER,
249   AVDT_SCB_CLR_VARS,
250   AVDT_SCB_DEALLOC,
251   AVDT_SCB_NUM_ACTIONS
252 };
253 
254 #define AVDT_SCB_IGNORE AVDT_SCB_NUM_ACTIONS
255 
256 /* scb state machine events */
257 enum {
258   AVDT_SCB_API_REMOVE_EVT,
259   AVDT_SCB_API_WRITE_REQ_EVT,
260   AVDT_SCB_API_GETCONFIG_REQ_EVT,
261   AVDT_SCB_API_DELAY_RPT_REQ_EVT,
262   AVDT_SCB_API_SETCONFIG_REQ_EVT,
263   AVDT_SCB_API_OPEN_REQ_EVT,
264   AVDT_SCB_API_CLOSE_REQ_EVT,
265   AVDT_SCB_API_RECONFIG_REQ_EVT,
266   AVDT_SCB_API_SECURITY_REQ_EVT,
267   AVDT_SCB_API_ABORT_REQ_EVT,
268   AVDT_SCB_API_GETCONFIG_RSP_EVT,
269   AVDT_SCB_API_SETCONFIG_RSP_EVT,
270   AVDT_SCB_API_SETCONFIG_REJ_EVT,
271   AVDT_SCB_API_OPEN_RSP_EVT,
272   AVDT_SCB_API_CLOSE_RSP_EVT,
273   AVDT_SCB_API_RECONFIG_RSP_EVT,
274   AVDT_SCB_API_SECURITY_RSP_EVT,
275   AVDT_SCB_API_ABORT_RSP_EVT,
276   AVDT_SCB_MSG_SETCONFIG_CMD_EVT,
277   AVDT_SCB_MSG_GETCONFIG_CMD_EVT,
278   AVDT_SCB_MSG_OPEN_CMD_EVT,
279   AVDT_SCB_MSG_START_CMD_EVT,
280   AVDT_SCB_MSG_SUSPEND_CMD_EVT,
281   AVDT_SCB_MSG_CLOSE_CMD_EVT,
282   AVDT_SCB_MSG_ABORT_CMD_EVT,
283   AVDT_SCB_MSG_RECONFIG_CMD_EVT,
284   AVDT_SCB_MSG_SECURITY_CMD_EVT,
285   AVDT_SCB_MSG_DELAY_RPT_CMD_EVT,
286   AVDT_SCB_MSG_DELAY_RPT_RSP_EVT,
287   AVDT_SCB_MSG_SETCONFIG_RSP_EVT,
288   AVDT_SCB_MSG_GETCONFIG_RSP_EVT,
289   AVDT_SCB_MSG_OPEN_RSP_EVT,
290   AVDT_SCB_MSG_START_RSP_EVT,
291   AVDT_SCB_MSG_SUSPEND_RSP_EVT,
292   AVDT_SCB_MSG_CLOSE_RSP_EVT,
293   AVDT_SCB_MSG_ABORT_RSP_EVT,
294   AVDT_SCB_MSG_RECONFIG_RSP_EVT,
295   AVDT_SCB_MSG_SECURITY_RSP_EVT,
296   AVDT_SCB_MSG_SETCONFIG_REJ_EVT,
297   AVDT_SCB_MSG_OPEN_REJ_EVT,
298   AVDT_SCB_MSG_START_REJ_EVT,
299   AVDT_SCB_MSG_SUSPEND_REJ_EVT,
300   AVDT_SCB_TC_TOUT_EVT,
301   AVDT_SCB_TC_OPEN_EVT,
302   AVDT_SCB_TC_CLOSE_EVT,
303   AVDT_SCB_TC_CONG_EVT,
304   AVDT_SCB_TC_DATA_EVT,
305   AVDT_SCB_CC_CLOSE_EVT
306 };
307 
308 /* adaption layer number of stream routing table entries */
309 /* 2 channels(1 media, 1 report) for each SEP and one for signalling */
310 #define AVDT_NUM_RT_TBL (AVDT_NUM_SEPS * AVDT_CHAN_NUM_TYPES + 1)
311 
312 /* adaption layer number of transport channel table entries - moved to target.h
313 #define AVDT_NUM_TC_TBL     (AVDT_NUM_SEPS + AVDT_NUM_LINKS) */
314 
315 /* "states" used in transport channel table */
316 #define AVDT_AD_ST_UNUSED 0  /* Unused - unallocated */
317 #define AVDT_AD_ST_IDLE 1    /* No connection */
318 #define AVDT_AD_ST_ACP 2     /* Waiting to accept a connection */
319 #define AVDT_AD_ST_CONN 4    /* Waiting for connection confirm */
320 #define AVDT_AD_ST_CFG 5     /* Waiting for configuration complete */
321 #define AVDT_AD_ST_OPEN 6    /* Channel opened */
322 #define AVDT_AD_ST_SEC_INT 7 /* Security process as INT */
323 #define AVDT_AD_ST_SEC_ACP 8 /* Security process as ACP */
324 
325 /* Configuration flags. AvdtpTransportChannel.cfg_flags */
326 #define AVDT_L2C_CFG_CONN_INT (1 << 2)
327 #define AVDT_L2C_CFG_CONN_ACP (1 << 3)
328 
329 /*****************************************************************************
330  * data types
331  ****************************************************************************/
332 
333 /* msg union of all message parameter types */
334 typedef union {
335   tAVDT_EVT_HDR hdr;
336   tAVDT_EVT_HDR single;
337   tAVDT_SETCONFIG config_cmd;
338   tAVDT_CONFIG reconfig_cmd;
339   tAVDT_MULTI multi;
340   tAVDT_SECURITY security_cmd;
341   tAVDT_DISCOVER discover_rsp;
342   tAVDT_CONFIG svccap;
343   tAVDT_SECURITY security_rsp;
344   tAVDT_DELAY_RPT delay_rpt_cmd;
345 } tAVDT_MSG;
346 
347 /* data type for AVDT_CCB_API_DISCOVER_REQ_EVT */
348 typedef struct {
349   tAVDT_CTRL_CBACK* p_cback;
350   tAVDT_SEP_INFO* p_sep_info;
351   uint8_t num_seps;
352 } tAVDT_CCB_API_DISCOVER;
353 
354 /* data type for AVDT_CCB_API_GETCAP_REQ_EVT */
355 typedef struct {
356   tAVDT_EVT_HDR single;
357   tAVDT_CTRL_CBACK* p_cback;
358   AvdtpSepConfig* p_cfg;
359 } tAVDT_CCB_API_GETCAP;
360 
361 /* data type for AVDT_CCB_API_CONNECT_REQ_EVT */
362 typedef struct {
363   tAVDT_CTRL_CBACK* p_cback;
364 } tAVDT_CCB_API_CONNECT;
365 
366 /* data type for AVDT_CCB_API_DISCONNECT_REQ_EVT */
367 typedef struct { tAVDT_CTRL_CBACK* p_cback; } tAVDT_CCB_API_DISCONNECT;
368 
369 /* union associated with ccb state machine events */
370 typedef union {
371   tAVDT_CCB_API_DISCOVER discover;
372   tAVDT_CCB_API_GETCAP getcap;
373   tAVDT_CCB_API_CONNECT connect;
374   tAVDT_CCB_API_DISCONNECT disconnect;
375   tAVDT_MSG msg;
376   bool llcong;
377   uint8_t err_code;
378 } tAVDT_CCB_EVT;
379 
380 /* type for AVDT_SCB_API_WRITE_REQ_EVT */
381 typedef struct {
382   BT_HDR* p_buf;
383   uint32_t time_stamp;
384   uint8_t m_pt;
385   tAVDT_DATA_OPT_MASK opt;
386 } tAVDT_SCB_APIWRITE;
387 
388 /* type for AVDT_SCB_TC_CLOSE_EVT */
389 typedef struct {
390   uint8_t old_tc_state; /* channel state before closed */
391   uint8_t tcid;         /* TCID  */
392   uint8_t type;         /* channel type */
393 } tAVDT_SCB_TC_CLOSE;
394 
395 /* type for scb event data */
396 typedef union {
397   tAVDT_MSG msg;
398   tAVDT_SCB_APIWRITE apiwrite;
399   tAVDT_DELAY_RPT apidelay;
400   tAVDT_OPEN open;
401   tAVDT_SCB_TC_CLOSE close;
402   bool llcong;
403   BT_HDR* p_pkt;
404 } tAVDT_SCB_EVT;
405 
406 class AvdtpCcb;
407 
408 /**
409  * AVDTP Stream Control Block.
410  */
411 class AvdtpScb {
412  public:
AvdtpScb()413   AvdtpScb()
414       : transport_channel_timer(nullptr),
415         p_pkt(nullptr),
416         p_ccb(nullptr),
417         media_seq(0),
418         allocated(false),
419         in_use(false),
420         role(0),
421         remove(false),
422         state(0),
423         peer_seid(0),
424         curr_evt(0),
425         cong(false),
426         close_code(0),
427         scb_handle_(0) {}
428 
429   /**
430    * Allocate the entry for usage.
431    * Previous state will be reset and initialized.
432    *
433    * @param p_avdtp_ccb the AvdtCcb entry to use
434    * @param avdtp_stream_config the stream config to use
435    */
436   void Allocate(AvdtpCcb* p_avdtp_ccb,
437                 const AvdtpStreamConfig& avdtp_stream_config);
438 
439   /**
440    * Recycle the entry by resetting it, mark it as allocated and keeping
441    * the following state:
442    *  - stream_config
443    *  - p_ccb
444    */
Recycle()445   void Recycle() {
446     AvdtpStreamConfig stream_config_saved = stream_config;
447     AvdtpCcb* p_ccb_saved = p_ccb;
448     Allocate(p_ccb_saved, stream_config_saved);
449   }
450 
451   /**
452    * Reset all the state.
453    *
454    * @param scb_handle the AVDTP SCB handle to use
455    */
Reset(uint8_t scb_handle)456   void Reset(uint8_t scb_handle) {
457     stream_config.Reset();
458     curr_cfg.Reset();
459     req_cfg.Reset();
460 
461     alarm_free(transport_channel_timer);
462     transport_channel_timer = nullptr;
463 
464     p_pkt = nullptr;
465     p_ccb = nullptr;
466     media_seq = 0;
467     allocated = false;
468     in_use = false;
469     role = 0;
470     remove = false;
471     state = 0;
472     peer_seid = 0;
473     curr_evt = 0;
474     cong = false;
475     close_code = 0;
476     scb_handle_ = scb_handle;
477   }
478 
479   /**
480    * Get the AVDTP SCB handle for this entry.
481    */
ScbHandle()482   uint8_t ScbHandle() const { return scb_handle_; }
483 
484   AvdtpStreamConfig stream_config;   // Stream configuration
485   AvdtpSepConfig curr_cfg;           // Current configuration
486   AvdtpSepConfig req_cfg;            // Requested configuration
487   alarm_t* transport_channel_timer;  // Transport channel connect timer
488   BT_HDR* p_pkt;                     // Packet waiting to be sent
489   AvdtpCcb* p_ccb;                   // CCB associated with this SCB
490   uint16_t media_seq;                // Media packet sequence number
491   bool allocated;                    // True if the SCB is allocated
492   bool in_use;                       // True if used by peer
493   uint8_t role;        // Initiator/acceptor role in current procedure
494   bool remove;         // True if the SCB is marked for removal
495   uint8_t state;       // State machine state
496   uint8_t peer_seid;   // SEID of peer stream
497   uint8_t curr_evt;    // current event; set only by the state machine
498   bool cong;           // True if the media transport channel is congested
499   uint8_t close_code;  // Error code received in close response
500   bool curr_stream;    // True if the SCB is the current stream, False otherwise
501 
502  private:
503   uint8_t scb_handle_;  // Unique handle for this AvdtpScb entry
504 };
505 
506 /**
507  * AVDTP Channel Control Block.
508  */
509 class AvdtpCcb {
510  public:
AvdtpCcb()511   AvdtpCcb()
512       : peer_addr(RawAddress::kEmpty),
513         scb{},
514         idle_ccb_timer(nullptr),
515         ret_ccb_timer(nullptr),
516         rsp_ccb_timer(nullptr),
517         cmd_q(nullptr),
518         rsp_q(nullptr),
519         proc_cback(nullptr),
520         p_conn_cback(nullptr),
521         p_proc_data(nullptr),
522         p_curr_cmd(nullptr),
523         p_curr_msg(nullptr),
524         p_rx_msg(nullptr),
525         allocated(false),
526         state(0),
527         ll_opened(false),
528         proc_busy(false),
529         proc_param(0),
530         cong(false),
531         label(0),
532         reconn(false),
533         ret_count(0),
534         bta_av_scb_index_(0) {}
535 
536   /**
537    * Allocate the entry for usage.
538    *
539    * NOTE: The corresponding AvdtpScb entries are allocated independently.
540    * @param peer_address the peer address
541    */
542   void Allocate(const RawAddress& peer_address);
543 
544   /**
545    * Reset all the state.
546    *
547    * @param bta_av_scb_index the BTA AV SCB index to use
548    */
Reset(uint8_t bta_av_scb_index)549   void Reset(uint8_t bta_av_scb_index) {
550     bta_av_scb_index_ = bta_av_scb_index;
551     ResetCcb();
552     for (size_t i = 0; i < AVDT_NUM_SEPS; i++) {
553       scb[i].Reset(0);
554     }
555   }
556 
557   /**
558    * Reset only the Channel Control Block state without the Stream
559    * Control Block entries. The bta_av_scb_index_ is also preserved.
560    */
ResetCcb()561   void ResetCcb() {
562     peer_addr = RawAddress::kEmpty;
563 
564     alarm_free(idle_ccb_timer);
565     idle_ccb_timer = nullptr;
566 
567     alarm_free(ret_ccb_timer);
568     ret_ccb_timer = nullptr;
569 
570     alarm_free(rsp_ccb_timer);
571     rsp_ccb_timer = nullptr;
572 
573     fixed_queue_free(cmd_q, nullptr);
574     cmd_q = nullptr;
575 
576     fixed_queue_free(rsp_q, nullptr);
577     rsp_q = nullptr;
578 
579     proc_cback = nullptr;
580     p_conn_cback = nullptr;
581     p_proc_data = nullptr;
582     p_curr_cmd = nullptr;
583     p_curr_msg = nullptr;
584     p_rx_msg = nullptr;
585     allocated = false;
586     state = 0;
587     ll_opened = false;
588     proc_busy = false;
589     proc_param = 0;
590     cong = false;
591     label = 0;
592     reconn = false;
593     ret_count = 0;
594   }
595 
596   /**
597    * Get the corresponding BTA AV stream control block index for this entry.
598    */
BtaAvScbIndex()599   uint8_t BtaAvScbIndex() const { return bta_av_scb_index_; }
600 
601   RawAddress peer_addr;         // Bluetooth address of peer
602   AvdtpScb scb[AVDT_NUM_SEPS];  // The AVDTP stream control blocks
603 
604   /*
605    * NOTE: idle_ccb_timer, ret_ccb_timer and rsp_ccb_timer are mutually
606    * exclusive - no more than one timer should be running at the same time.
607    */
608   alarm_t* idle_ccb_timer;  // Idle CCB timer entry
609   alarm_t* ret_ccb_timer;   // Ret CCB timer entry
610   alarm_t* rsp_ccb_timer;   // Rsp CCB timer entry
611   fixed_queue_t* cmd_q;     // Queue for outgoing command messages
612   fixed_queue_t* rsp_q;     // Queue for outgoing response and reject messages
613   tAVDT_CTRL_CBACK* proc_cback;    // Procedure callback function
614   tAVDT_CTRL_CBACK* p_conn_cback;  // Connection/disconnection callback function
615   void* p_proc_data;               // Pointer to data storage for procedure
616   BT_HDR* p_curr_cmd;  // Current command being sent awaiting response
617   BT_HDR* p_curr_msg;  // Current message being sent
618   BT_HDR* p_rx_msg;    // Current message being received
619   bool allocated;      // Whether ccb is allocated
620   uint8_t state;       // The CCB state machine state
621   bool ll_opened;      // True if LL is opened
622   bool proc_busy;      // True when a discover or get capabilities procedure in
623                        // progress
624   uint8_t proc_param;  // Procedure parameter; either SEID for get capabilities
625                        // or number of SEPS for discover
626   bool cong;           // True if the signaling channel is congested
627   uint8_t label;       // Message header "label" (sequence number)
628   bool reconn;        // If true, reinitiate connection after transitioning from
629                       // CLOSING to IDLE state
630   uint8_t ret_count;  // Command retransmission count
631 
632  private:
633   // The corresponding BTA AV stream control block index for this entry
634   uint8_t bta_av_scb_index_;
635 };
636 
637 /**
638  * AVDTP transport channel entry.
639  * Used in the transport channel table in the adaptation layer.
640  */
641 class AvdtpTransportChannel {
642  public:
AvdtpTransportChannel()643   AvdtpTransportChannel()
644       : peer_mtu(0),
645         my_mtu(0),
646         lcid(0),
647         tcid(0),
648         ccb_idx(0),
649         state(0),
650         cfg_flags(0) {}
651 
Reset()652   void Reset() {
653     peer_mtu = 0;
654     my_mtu = 0;
655     lcid = 0;
656     tcid = 0;
657     ccb_idx = 0;
658     state = 0;
659     cfg_flags = 0;
660   }
661 
662   uint16_t peer_mtu;     // L2CAP MTU of the peer device
663   uint16_t my_mtu;       // Our MTU for this channel
664   uint16_t lcid;
665   uint8_t tcid;       // Transport channel ID
666   uint8_t ccb_idx;    // Channel control block for with this transport channel
667   uint8_t state;      // Transport channel state
668   uint8_t cfg_flags;  // L2CAP configuration flags
669 };
670 
671 /**
672  * AVDTP stream routing entry.
673  * Used in the routing table in the adaption layer.
674  */
675 class AvdtpRoutingEntry {
676  public:
AvdtpRoutingEntry()677   AvdtpRoutingEntry() : lcid(0), scb_hdl(0) {}
678 
Reset()679   void Reset() {
680     lcid = 0;
681     scb_hdl = 0;
682   }
683 
684   uint16_t lcid;    // L2CAP LCID of the associated transport channel
685   uint8_t scb_hdl;  // Stream control block for this transport channel
686 };
687 
688 /**
689  * AVDTP adaption layer control block.
690  */
691 class AvdtpAdaptationLayer {
692  public:
AvdtpAdaptationLayer()693   AvdtpAdaptationLayer() {}
694 
Reset()695   void Reset() {
696     for (size_t i = 0; i < AVDT_NUM_LINKS; i++) {
697       for (size_t j = 0; j < AVDT_NUM_RT_TBL; j++) {
698         rt_tbl[i][j].Reset();
699       }
700     }
701     for (size_t i = 0; i < AVDT_NUM_TC_TBL; i++) {
702       tc_tbl[i].Reset();
703     }
704     lcid_tbl.clear();
705   }
706 
707   /**
708    * Lookup AvdtpScb entry for a transport channel.
709    *
710    * @param tc the transport channel
711    * @return the corresponding AvdtpScb entry or null of the transport
712    * channel is invalid.
713    */
714   AvdtpScb* LookupAvdtpScb(const AvdtpTransportChannel& tc);
715 
716   AvdtpRoutingEntry rt_tbl[AVDT_NUM_LINKS][AVDT_NUM_RT_TBL];
717   AvdtpTransportChannel tc_tbl[AVDT_NUM_TC_TBL];
718 
719   std::unordered_map<uint16_t, uint8_t> lcid_tbl;  // Map LCID to tc_tbl index
720 };
721 
722 /**
723  * Types for action functions.
724  */
725 typedef void (*tAVDT_CCB_ACTION)(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
726 typedef void (*tAVDT_SCB_ACTION)(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
727 
728 /**
729  * Control block for AVDTP.
730  */
731 class AvdtpCb {
732  public:
AvdtpCb()733   AvdtpCb()
734       : p_conf_cback(nullptr),
735         p_ccb_act(nullptr),
736         p_scb_act(nullptr),
737         p_conn_cback(nullptr),
738         trace_level_(0) {}
739 
Reset()740   void Reset() {
741     rcb.Reset();
742     for (size_t i = 0; i < AVDT_NUM_LINKS; i++) {
743       ccb[i].Reset(i);
744     }
745     ad.Reset();
746     p_conf_cback = nullptr;
747     p_ccb_act = nullptr;
748     p_scb_act = nullptr;
749     p_conn_cback = nullptr;
750     trace_level_ = 0;
751   }
752 
753   AvdtpRcb rcb;                       // Registration control block
754   AvdtpCcb ccb[AVDT_NUM_LINKS];       // Channel control blocks
755   AvdtpAdaptationLayer ad;            // Adaption layer control block
756   tAVDTC_CTRL_CBACK* p_conf_cback;    // Conformance callback function
757   const tAVDT_CCB_ACTION* p_ccb_act;  // Pointer to CCB action functions
758   const tAVDT_SCB_ACTION* p_scb_act;  // Pointer to SCB action functions
759   tAVDT_CTRL_CBACK* p_conn_cback;     // Connection callback function
760 
761   /**
762    * Compute the SCB handle for a given AvdtpScb entry.
763    *
764    * @param p_scb the entry to use
765    * @return the computed SCB handle or 0 if the entry is invalid.
766    */
ComputeScbHandle(const AvdtpScb * p_scb)767   uint8_t ComputeScbHandle(const AvdtpScb* p_scb) const {
768     uint8_t scb_handle = 0;
769 
770     // Find the entry and in the process compute the unique index
771     // TODO: This mechanism is sub-efficient and should be refactored.
772     for (size_t i = 0; i < AVDT_NUM_LINKS; i++) {
773       for (size_t j = 0; j < AVDT_NUM_SEPS; j++) {
774         scb_handle++;
775         if (&ccb[i].scb[j] == p_scb) {
776           return scb_handle;
777         }
778       }
779     }
780     return 0;  // Not found
781   }
782 
783   /**
784    * Get the current trace level used for logging.
785    *
786    * @return the current trace level
787    */
TraceLevel()788   uint8_t TraceLevel() const { return trace_level_; }
789 
790   /**
791    * Set the current trace level used for logging.
792    *
793    * @param trace_level the trace level to set. Should be in the range [1, 6].
794    */
SetTraceLevel(uint8_t trace_level)795   void SetTraceLevel(uint8_t trace_level) { trace_level_ = trace_level; }
796 
797  private:
798   uint8_t trace_level_; /* trace level */
799 };
800 
801 /*****************************************************************************
802  * function declarations
803  ****************************************************************************/
804 
805 /* CCB function declarations */
806 extern void avdt_ccb_init(void);
807 extern void avdt_ccb_event(AvdtpCcb* p_ccb, uint8_t event,
808                            tAVDT_CCB_EVT* p_data);
809 extern AvdtpCcb* avdt_ccb_by_bd(const RawAddress& bd_addr);
810 extern AvdtpCcb* avdt_ccb_alloc(const RawAddress& bd_addr);
811 extern AvdtpCcb* avdt_ccb_alloc_by_channel_index(const RawAddress& bd_addr,
812                                                  uint8_t channel_index);
813 extern void avdt_ccb_dealloc(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
814 extern uint8_t avdt_ccb_to_idx(AvdtpCcb* p_ccb);
815 extern AvdtpCcb* avdt_ccb_by_idx(uint8_t idx);
816 
817 /* CCB action functions */
818 extern void avdt_ccb_chan_open(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
819 extern void avdt_ccb_chan_close(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
820 extern void avdt_ccb_chk_close(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
821 extern void avdt_ccb_hdl_discover_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
822 extern void avdt_ccb_hdl_discover_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
823 extern void avdt_ccb_hdl_getcap_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
824 extern void avdt_ccb_hdl_getcap_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
825 extern void avdt_ccb_hdl_start_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
826 extern void avdt_ccb_hdl_start_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
827 extern void avdt_ccb_hdl_suspend_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
828 extern void avdt_ccb_hdl_suspend_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
829 extern void avdt_ccb_snd_discover_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
830 extern void avdt_ccb_snd_discover_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
831 extern void avdt_ccb_snd_getcap_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
832 extern void avdt_ccb_snd_getcap_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
833 extern void avdt_ccb_snd_start_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
834 extern void avdt_ccb_snd_start_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
835 extern void avdt_ccb_snd_suspend_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
836 extern void avdt_ccb_snd_suspend_rsp(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
837 extern void avdt_ccb_clear_cmds(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
838 extern void avdt_ccb_cmd_fail(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
839 extern void avdt_ccb_free_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
840 extern void avdt_ccb_cong_state(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
841 extern void avdt_ccb_ret_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
842 extern void avdt_ccb_snd_cmd(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
843 extern void avdt_ccb_snd_msg(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
844 extern void avdt_ccb_set_reconn(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
845 extern void avdt_ccb_clr_reconn(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
846 extern void avdt_ccb_chk_reconn(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
847 extern void avdt_ccb_chk_timer(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
848 extern void avdt_ccb_set_conn(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
849 extern void avdt_ccb_set_disconn(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
850 extern void avdt_ccb_do_disconn(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
851 extern void avdt_ccb_ll_closed(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
852 extern void avdt_ccb_ll_opened(AvdtpCcb* p_ccb, tAVDT_CCB_EVT* p_data);
853 
854 /* SCB function prototypes */
855 extern void avdt_scb_event(AvdtpScb* p_scb, uint8_t event,
856                            tAVDT_SCB_EVT* p_data);
857 extern void avdt_scb_init(void);
858 extern AvdtpScb* avdt_scb_alloc(uint8_t peer_id,
859                                 const AvdtpStreamConfig& avdtp_stream_config);
860 extern void avdt_scb_dealloc(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
861 extern uint8_t avdt_scb_to_hdl(AvdtpScb* p_scb);
862 extern AvdtpScb* avdt_scb_by_hdl(uint8_t hdl);
863 extern uint8_t avdt_scb_verify(AvdtpCcb* p_ccb, uint8_t state, uint8_t* p_seid,
864                                uint16_t num_seid, uint8_t* p_err_code);
865 extern void avdt_scb_peer_seid_list(tAVDT_MULTI* p_multi);
866 extern uint32_t avdt_scb_gen_ssrc(AvdtpScb* p_scb);
867 
868 /* SCB action functions */
869 extern void avdt_scb_hdl_abort_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
870 extern void avdt_scb_hdl_abort_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
871 extern void avdt_scb_hdl_close_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
872 extern void avdt_scb_hdl_close_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
873 extern void avdt_scb_hdl_getconfig_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
874 extern void avdt_scb_hdl_getconfig_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
875 extern void avdt_scb_hdl_open_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
876 extern void avdt_scb_hdl_open_rej(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
877 extern void avdt_scb_hdl_open_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
878 extern void avdt_scb_hdl_pkt(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
879 extern void avdt_scb_drop_pkt(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
880 extern void avdt_scb_hdl_reconfig_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
881 extern void avdt_scb_hdl_reconfig_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
882 extern void avdt_scb_hdl_security_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
883 extern void avdt_scb_hdl_security_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
884 extern void avdt_scb_hdl_setconfig_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
885 extern void avdt_scb_hdl_setconfig_rej(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
886 extern void avdt_scb_hdl_setconfig_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
887 extern void avdt_scb_hdl_start_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
888 extern void avdt_scb_hdl_start_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
889 extern void avdt_scb_hdl_suspend_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
890 extern void avdt_scb_hdl_suspend_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
891 extern void avdt_scb_snd_delay_rpt_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
892 extern void avdt_scb_hdl_delay_rpt_cmd(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
893 extern void avdt_scb_hdl_delay_rpt_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
894 extern void avdt_scb_hdl_tc_close(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
895 extern void avdt_scb_hdl_tc_open(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
896 extern void avdt_scb_hdl_tc_close_sto(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
897 extern void avdt_scb_hdl_tc_open_sto(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
898 extern void avdt_scb_hdl_write_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
899 extern void avdt_scb_snd_abort_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
900 extern void avdt_scb_snd_abort_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
901 extern void avdt_scb_snd_close_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
902 extern void avdt_scb_snd_stream_close(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
903 extern void avdt_scb_snd_close_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
904 extern void avdt_scb_snd_getconfig_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
905 extern void avdt_scb_snd_getconfig_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
906 extern void avdt_scb_snd_open_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
907 extern void avdt_scb_snd_open_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
908 extern void avdt_scb_snd_reconfig_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
909 extern void avdt_scb_snd_reconfig_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
910 extern void avdt_scb_snd_security_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
911 extern void avdt_scb_snd_security_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
912 extern void avdt_scb_snd_setconfig_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
913 extern void avdt_scb_snd_setconfig_rej(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
914 extern void avdt_scb_snd_setconfig_rsp(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
915 extern void avdt_scb_snd_snk_delay_rpt_req(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
916 extern void avdt_scb_snd_tc_close(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
917 extern void avdt_scb_cb_err(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
918 extern void avdt_scb_cong_state(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
919 extern void avdt_scb_rej_state(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
920 extern void avdt_scb_rej_in_use(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
921 extern void avdt_scb_rej_not_in_use(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
922 extern void avdt_scb_set_remove(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
923 extern void avdt_scb_free_pkt(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
924 extern void avdt_scb_chk_snd_pkt(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
925 extern void avdt_scb_clr_pkt(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
926 extern void avdt_scb_transport_channel_timer(AvdtpScb* p_scb,
927                                              tAVDT_SCB_EVT* p_data);
928 extern void avdt_scb_clr_vars(AvdtpScb* p_scb, tAVDT_SCB_EVT* p_data);
929 
930 /* msg function declarations */
931 extern bool avdt_msg_send(AvdtpCcb* p_ccb, BT_HDR* p_msg);
932 extern void avdt_msg_send_cmd(AvdtpCcb* p_ccb, void* p_scb, uint8_t sig_id,
933                               tAVDT_MSG* p_params);
934 extern void avdt_msg_send_rsp(AvdtpCcb* p_ccb, uint8_t sig_id,
935                               tAVDT_MSG* p_params);
936 extern void avdt_msg_send_rej(AvdtpCcb* p_ccb, uint8_t sig_id,
937                               tAVDT_MSG* p_params);
938 extern void avdt_msg_send_grej(AvdtpCcb* p_ccb, uint8_t sig_id,
939                                tAVDT_MSG* p_params);
940 extern void avdt_msg_ind(AvdtpCcb* p_ccb, BT_HDR* p_buf);
941 
942 /* adaption layer function declarations */
943 extern void avdt_ad_init(void);
944 extern uint8_t avdt_ad_type_to_tcid(uint8_t type, AvdtpScb* p_scb);
945 extern AvdtpTransportChannel* avdt_ad_tc_tbl_by_st(uint8_t type,
946                                                    AvdtpCcb* p_ccb,
947                                                    uint8_t state);
948 extern AvdtpTransportChannel* avdt_ad_tc_tbl_by_lcid(uint16_t lcid);
949 extern AvdtpTransportChannel* avdt_ad_tc_tbl_alloc(AvdtpCcb* p_ccb);
950 extern uint8_t avdt_ad_tc_tbl_to_idx(AvdtpTransportChannel* p_tbl);
951 extern void avdt_ad_tc_close_ind(AvdtpTransportChannel* p_tbl);
952 extern void avdt_ad_tc_open_ind(AvdtpTransportChannel* p_tbl);
953 extern void avdt_ad_tc_cong_ind(AvdtpTransportChannel* p_tbl,
954                                 bool is_congested);
955 extern void avdt_ad_tc_data_ind(AvdtpTransportChannel* p_tbl, BT_HDR* p_buf);
956 extern AvdtpTransportChannel* avdt_ad_tc_tbl_by_type(uint8_t type,
957                                                      AvdtpCcb* p_ccb,
958                                                      AvdtpScb* p_scb);
959 extern uint8_t avdt_ad_write_req(uint8_t type, AvdtpCcb* p_ccb, AvdtpScb* p_scb,
960                                  BT_HDR* p_buf);
961 extern void avdt_ad_open_req(uint8_t type, AvdtpCcb* p_ccb, AvdtpScb* p_scb,
962                              uint8_t role);
963 extern void avdt_ad_close_req(uint8_t type, AvdtpCcb* p_ccb, AvdtpScb* p_scb);
964 
965 extern void avdt_ccb_idle_ccb_timer_timeout(void* data);
966 extern void avdt_ccb_ret_ccb_timer_timeout(void* data);
967 extern void avdt_ccb_rsp_ccb_timer_timeout(void* data);
968 extern void avdt_scb_transport_channel_timer_timeout(void* data);
969 
970 /*****************************************************************************
971  * macros
972  ****************************************************************************/
973 
974 /* we store the scb and the label in the layer_specific field of the
975  * current cmd
976 */
977 #define AVDT_BLD_LAYERSPEC(ls, msg, label) ls = (((label) << 4) | (msg))
978 
979 #define AVDT_LAYERSPEC_LABEL(ls) ((uint8_t)((ls) >> 4))
980 
981 #define AVDT_LAYERSPEC_MSG(ls) ((uint8_t)((ls)&0x000F))
982 
983 /*****************************************************************************
984  * global data
985  ****************************************************************************/
986 
987 /******************************************************************************
988  * Main Control Block
989  ******************************************************************************/
990 extern AvdtpCb avdtp_cb;
991 
992 /* L2CAP callback registration structure */
993 extern const tL2CAP_APPL_INFO avdt_l2c_appl;
994 
995 /* reject message event lookup table */
996 extern const uint8_t avdt_msg_rej_2_evt[];
997 
998 void avdt_l2c_disconnect(uint16_t lcid);
999 
1000 constexpr uint16_t kAvdtpMtu = 1024;
1001 
1002 #endif /* AVDT_INT_H */
1003